AD9461

PRODUCTION

16-Bit, 130 MSPS A/D Converter

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Overview

  • 130 MSPS guaranteed sampling rate (AD9461-130)
  • 78.4 dBFS SNR with 10 MHz input
    (3.4 V p-p input, 130 MSPS)
  • 77.1 dBFS SNR / 85 dBc SFDR with 170 MHz 
  • input (3.4V p-p input, 130 MSPS)
  • 83 dBc SFDR with 225 MHz input
    (3.4V p-p input, 130 MSPS)
  • 89 dBFS two-tone SFDR with 169 MHz and 170 MHz (130 MSPS)
  • 60 fsec rms jitter
  • Excellent linearity
    DNL = ±0.6 LSB typical
    INL = ±4.0 LSB typical
  • 2.0 V p-p to 4.0 V p-p differential full-scale input
  • Buffered analog inputs
  • LVDS outputs (ANSI-644 compatible) or CMOS outputs
  • Data format select (offset binary or twos complement)
  • Output clock available

The AD9461 is a 16-bit, monolithic, sampling analog-to-digital converter (ADC) with an on-chip track-and-hold circuit. It is optimized for performance, small size, and ease of use. The product operates up to 130 MSPS, providing superior SNR for instrumentation, medical imaging, and radar receivers employing baseband (<100 MHz) and IF frequencies.

The ADC requires 3.3 V and 5.0 V power supplies and a low voltage differential input clock for full performance operation. No external reference or driver components are required for many applications. Data outputs are CMOS or LVDS compatible (ANSI-644 compatible) and include the means to reduce the overall current needed for short trace distances.

Optional features allow users to implement various selectable operating conditions, including input range, data format select, and output data mode.

The AD9461 is available in a Pb-free, 100-lead, surface-mount, plastic package (100-lead TQFP/EP) specified over the industrial temperature range −40°C to +85°C.

PRODUCT HIGHLIGHTS

  1. True 16-bit linearity.
  2. High performance: outstanding SNR performance for baseband IFs in data acquisition, instrumentation, magnetic resonance imaging, and radar receivers.
  3. Ease of use: on-chip reference and high input impedance track-and-hold with adjustable analog input range and an output clock simplifies data capture.
  4. Packaged in a Pb-free, 100-lead TQFP/EP package.
  5. Clock duty cycle stabilizer (DCS) maintains overall ADC performance over a wide range of clock pulse widths.
  6. OR (out-of-range) outputs indicate when the signal is beyond the selected input range.

APPLICATIONS

  • MRI receivers
  • Multicarrier, multimode cellular receivers
  • Antenna array positioning
  • Power amplifier linearization
  • Broadband wireless
  • Radar
  • Infrared imaging
  • Communications instrumentation

AD9461
16-Bit, 130 MSPS A/D Converter
AD9461 Functional Block Diagram AD9461 Pin Configuration AD9461 Pin Configuration
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Documentation

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Software Resources

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Hardware Ecosystem

Parts Product Life Cycle Description
Clock ICs 6
AD9510 RECOMMENDED FOR NEW DESIGNS 1.2 GHz Clock Distribution IC, PLL Core, Dividers, Delay Adjust, Eight Outputs
AD9511 RECOMMENDED FOR NEW DESIGNS 1.2 GHz Clock Distribution IC, PLL Core, Dividers, Delay Adjust, Five Outputs
AD9512 RECOMMENDED FOR NEW DESIGNS 1.2 GHz Clock Distribution IC, Two 1.6 GHz Inputs, Dividers, Delay Adjust, Five Outputs
AD9513 RECOMMENDED FOR NEW DESIGNS 800 MHz Clock Distribution IC, Dividers, Delay Adjust, Three Outputs
AD9514 RECOMMENDED FOR NEW DESIGNS 1.6 GHz Clock Distribution IC, Dividers, Delay Adjust, Three Outputs
AD9515 RECOMMENDED FOR NEW DESIGNS 1.6 GHz Clock Distribution IC, Dividers, Delay Adjust, Two Outputs
Differential Amplifiers 2
ADA4938-1 RECOMMENDED FOR NEW DESIGNS Ultralow Distortion Differential ADC Driver (Single)
AD8352 RECOMMENDED FOR NEW DESIGNS 2 GHz Ultralow Distortion Differential RF/IF Amplifier
Variable Gain Amplifiers (VGA) 1
AD8375 PRODUCTION Ultralow Distortion IF VGA
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Tools & Simulations

Virtual Eval - BETA

Virtual Eval is a web application to assist designers in product evaluation of ADCs, DACs, and other ADI products. Using detailed models on Analog’s servers, Virtual Eval simulates crucial part performance characteristics within seconds. Configure operating conditions such as input tones and external jitter, as well as device features like gain or digital down-conversion. Performance characteristics include noise, distortion, and resolution, FFTs, timing diagrams, response plots, and more.

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AD9461 IBIS Models 1

Visual Analog

For designers who are selecting or evaluating high speed ADCs, VisualAnalog™ is a software package that combines a powerful set of simulation and data analysis tools with a user-friendly graphical interface.

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AD9461 Simulink ADIsimADC Model

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Evaluation Kits

EVAL-AD9461

AD9461 Evaluation Board

Features and Benefits

  • Buffer memory board for capturing digital data used with high speed ADC evaluation boards to simplify evaluation
  • 32 kB FIFO depth at 133 MSPS (upgradable)
  • Measures performance with ADC Analyzer™ Real-time FFT and time domain analysis Analyze SNR, SINAD, SFDR, and harmonics
  • Simple USB port interface (2.0)
  • Supporting ADCs with serial port interfaces (SPI)
  • On-board regulator circuit, no power supply required 6 V, 2 A switching power supply included
  • Compatible with Windows 98 (2nd ed.), Windows 2000, Windows ME, and Windows XP

Product Details

The high speed ADC FIFO evaluation kit includes the latest version of ADC Analyzer and a buffer memory board to capture blocks of digital data from the Analog Devices, Inc., high speed analog-to-digital converter (ADC) evaluation boards. The FIFO board is connected to the PC through a USB port and is used with ADC Analyzer to quickly evaluate the performance of high speed ADCs. Users can view an FFT for a specific analog input and encode rate to analyze SNR, SINAD, SFDR, and harmonic information.

The evaluation kit is easy to set up. Additional equipment needed includes an Analog Devices high speed ADC evaluation board, a signal source, and a clock source. Once the kit is connected and powered, the evaluation is enabled instantly on the PC.

The HSC-ADC-EVALB-DCZ can be used with single and multichannel ADCs and converters with demultiplexed digital outputs.

EVAL-AD9461
AD9461 Evaluation Board

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